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1.
 采用抗原直接包被和双抗体夹心酶联免疫吸附测定法(ELISA)对采自云南、福建、湖南烟区烟草花叶病样品进行了病毒种类检测,利用三抗体夹心ELISA对黄瓜花叶病毒(Cucumber mosaic virus,CMV)的亚组类型进行了鉴定。在云南采集的520个花叶病样品中,烟草花叶病毒(Tobacco mosaic virus,TMV)、CMV和马铃薯Y病毒(Potato virus Y,PVY)总检出率分别为71.74%、55.01%和6.35%;在福建采集的150个花叶病样品中,TMV、CMV和PVY的总检出率分别为94%、24.66%和8.00%;在湖南采集的74个花叶病样品中,TMV、CMV和PVY的总检出率分别为58.11%、51.35%和2.70%。部分样品为2种以上病毒复合侵染。云南、福建和湖南采集的64个CMV阳性样品中,属亚组Ⅰ的样品为57个,占89.1%;属亚组Ⅱ的样品为10个,占15.6%;其中3个样品为亚组Ⅰ和亚组Ⅱ的复合侵染。  相似文献   

2.
实时荧光RT-PCR检测辣椒轻斑驳病毒的初步研究   总被引:1,自引:0,他引:1  
本研究选取辣椒轻斑驳病毒PMMoV、烟草花叶病毒TMV、黄瓜花叶病毒CMV和马铃薯Y病毒PVY作为试验材料,根据PMMoV衣壳蛋白(CP)RNA的序列特异性位点,设计出Taqman荧光探针及其引物,采用实时荧光RT-PCR技术对PMMoV进行快速检测,同时与ELISA方法进行了灵敏度比较,结果表明:该方法具有较高的灵敏度及较强的特异性,PMMoV检测结果为阳性,TMV、CMV和PVY均无荧光信号,为阴性,灵敏度是传统的ELISA方法的100倍,而且大大缩短了检测时间。该方法快速、准确、灵敏、简便、安全,具有实际应用价值,适用于植物病毒病害的快速检测。  相似文献   

3.
五种烟草病毒TMV、CMV、TEV、PVY及TVBMV的多重RT-PCR同步检测   总被引:4,自引:0,他引:4  
 我国烟草病毒主要有烟草花叶病毒(TMV)、黄瓜花叶病毒(CMV)、烟草蚀纹病毒(TEV)、马铃薯Y病毒(PVY)和烟草脉带花叶病毒(TVBMV),通常发生复合侵染。本研究对我国5种烟草病毒的外壳蛋白基因部分序列设计引物,通过优化引物和模板浓度,摸索扩增参数,在一个体系中成功对5种病毒复合侵染的烟草材料进行多重RT-PCR扩增,得到237、273、347、456和547 bp共5条特异性条带,建立了能同时检测TMV、CMV、TEV、PVY和TVBMV的多重RT-PCR检测体系。对田间样品检测结果证明,多重RT-PCR体系能够同时检测5种病毒,并且灵敏度高。  相似文献   

4.
中国北方番茄主要病毒种类普查及TMV、CMV株系鉴定   总被引:3,自引:0,他引:3  
1990—1994年,对中国北方15省(市)番茄4种主要病毒种类进行了普查,在3761份样本中,烟草花叶病毒(TMV)和黄瓜花叶病毒(CMV)的检出率分别为34.5%—65.7%和11.6%—62.6%,马铃薯X病毒(PVX)和马铃薯Y病毒(PVY)的检出率一般为10%—20%。与此同时,也对番茄上的TMV和CMV进行了与抗病毒育种紧密相关的株系分化研究,在333个TMV分离物中鉴定出0、1、2和1.2株系,以0和1株系为主,在绝大多数省(市)中分别占分离物的50%和30%以上;在232个CMV分离物中鉴定出轻花叶、重花叶、坏死和黄化株系,以轻花叶和重花叶株系为主,在绝大多数省(市)中分别占分离物的30%和50%以上,这一研究结果为番茄病毒病的综合防治和抗病毒育种提供了科学依据。  相似文献   

5.
用常规血清学方法并辅以生物学测定法检测33种蔬菜(包括芝麻、甘薯,下同)414个样品,证明CMV、TMV、TuMV和PVY在泰安市郊均有分布,当P=0.95时,4种病毒的阳性率置信区间为CMV:52.2-61.7%;TMV:26.2-35.0%;TuMV:13.4-20.6%;PVY:11.0-17.7%。CMV在茄科和十字花科中最高,TMV在茄科中最高,TuMV在十字花科中最高,PVY则在豆科中分布最高。4种病毒在田间均存在一定的复合感染。  相似文献   

6.
黄瓜花叶病毒(Cucumber mosaic virus,CMV)是雀麦花叶病毒科Bromoviridae黄瓜花叶病毒属Cucumovirus的典型种。该病毒寄主范围广泛,能侵染85科365属1000多种植物。CMV除能单独侵染寄主植物外,还经常与TMV、PVY等复合侵染,给病害的田间调查和防治造成了困难。作者从山东青州的发病烟草植株上分离到了一个CMV青州分离物(命名为CMV-QZ),利用RT-PCR的方法克隆到了其外壳蛋白(coat protein,CP)基因,利用原核表达的CMV CP制备了抗血清,以期为CMV的准确快速检测提供依据。  相似文献   

7.
十字花科蔬菜病毒病原的检测   总被引:1,自引:0,他引:1  
应用酶联免疫吸附测定(ELISA)方法和对流免疫电泳方法检测病株样本325个。结果表明,芜菁花叶病毒(TuMV)是侵染十字花科蔬菜最主要的毒原;其侵染率达到83.08%,其次是黄瓜花叶病毒(CMV)占19.39%,烟草花叶病毒(TMV)占8.62%,其他病毒占0.31%。从各省的侵染病毒种类来看,除广西省外,其他6省的样本中,TuMV单独侵染的占50%以上;而广西省TuMV与CMV复合侵染的比率较高。贵州、安徽和江苏省TMV和TuMV复合侵染率较其他几省为高,湖北省CMV较普遍。各种蔬菜样本中除花椰菜外;均以TuMV或TuMV与其他病毒复合侵染的为主。  相似文献   

8.
 根据已发表的烟草花叶病毒(Tobacco mosaic virus,TMV)、黄瓜花叶病毒(Cucumber mosaic virus,CMV)和马铃薯Y病毒(Potato virus Y,PVY)的外壳蛋白基因序列,设计特异引物,分别以提取的TMV、CMV和PVY侵染的病叶总RNA为模板,反转录PCR进行体外扩增,分别得到长度为0.44、0.77、0.80 kb的目的片段,并克隆到pGEM-T easy质粒载体上,以构建的重组质粒为模板,用PCR方法合成了相应的地高辛标记的双链DNA探针。以合成的探针通过斑点杂交技术检测烟草病叶总RNA和烟草病叶汁液。TMV、CMV和PVY的3种地高辛探针检测各自感染的烟草病叶总RNA的稀释低限分别为1:1000、1:10000、1:320,检测各自侵染烟草病汁液的最大稀释倍数分别为1:100、1:100、1:10,而每种探针与健康烟草和其它2种病毒的反应均为阴性。  相似文献   

9.
甘肃省18种药用植物病毒病调查及2种病毒病的鉴定   总被引:3,自引:0,他引:3  
2012年6月至2013年9月对甘肃省宕昌县、漳县、岷县、渭源县、陇西县、临洮县等地区种植的具有疑似病毒病症状的半夏等18种药用植物进行调查及采样。采用黄瓜花叶病毒(CMV)、苜蓿花叶病毒(AMV)、烟草花叶病毒(TMV)、番茄花叶病毒(ToMV)、马铃薯Y病毒(PVY)、马铃薯X病毒(PVX)、芜菁花叶病毒(TuMV)等7种双抗体夹心免疫酶联检测(DAS-ELISA)试剂盒初检, 并对CMV和ToMV采用反转录PCR(RT-PCR)方法复检, 结果表明, 半夏、掌叶大黄和红花3种药用植物受到黄瓜花叶病毒(CMV)侵染; 马兜铃、土贝母及当归3种植物受到番茄花叶病毒(ToMV)侵染; 样品中未检测到上述其他病毒种类, 其余12种病毒样品的病原尚未确定。本研究为国内首次报道CMV病毒侵染掌叶大黄、红花, ToMV病毒侵染马兜铃、当归和土贝母。此研究为防治上述病毒病提供了依据。  相似文献   

10.
烤烟是贵州省的重要经济作物,但是烟草花叶病毒(TMV)、黄瓜花叶病毒(CMV)和马铃薯Y病毒(PVY)3种RNA病毒在贵州烤烟产区造成巨大损失.3种病毒引起的症状相似性造成了田间诊断的困难.针对贵州烟区的样品,开发了一套包含了靶向3种病毒外壳蛋白基因特异性片段的RT-PCR检测方法.3对引物涵盖的基因片段长度分别为:T...  相似文献   

11.
Commercial capsicum fields in Lusaka Province were surveyed for the presence of viruses during 1996-01/06. The survey demonstrated the occurrence of five viruses in 13 fields. Virus identification was based on field disease syndrome, host range studies, DAS-ELISA and electron microscopy. The identified viruses were alfalfa mosaic alfamovirus (AMV), potato Y potyvirus (PVY), tobacco mosaic tobamovirus (TMV), cucumber mosaic cucumovirus (CMV) and pepper mild mottle tobamovirus (PMMV). The most prevalent and widespread virus, recovered from 70% of the surveyed fields, was AMV, and this was followed by PVY and TMV, which were detected in 50% and 40% of the fields respectively. CMV and PMMV were less common and occurred in 30% of fields. The study also showed that PVY could infect capsicum plants alone or in combination with CMV or TMV. The average plant infections caused by AMV was 80–100% and by TMV and PVY 50% and 60% respectively. The disease incidence in the case of CMV was 15–60% and for PMMV 30–40%. This is a first report on the identification of viruses that infect capsicum in Zambia.  相似文献   

12.
To identify viruses in Henan tobacco-planting areas, from 2015 to 2017 and 2019, 288 symptomatic tobacco samples were collected and then subjected to small RNA sequencing. Results showed that at least 7 viruses were detected from these samples which including four previously reported viruses, cucumber mosaic virus (CMV), tobacco mosaic virus (TMV), potato virus Y (PVY) and tobacco vein banding mosaic virus (TVBMV). Other three viruses, wild tomato mosaic virus (WTMV), brassica yellows virus (BrYV), and cycas necrotic stunt virus (CNSV) were firstly detected in Henan province. However, tobacco etch virus (TEV) and tobacco ringspot virus (TRSV) were not detected from these samples. In addition, CMV, TMV, PVY, TVBMV, and BrYV were the dominant viruses infecting tobacco in Henan Province.  相似文献   

13.
Nine tobacco fields of small- and large-scale farmers in Central, Lusaka and Southern provinces of Zambia with an experimental area in the range of 4–52 ha were surveyed for the incidence, prevalence and identification of virus diseases during the growing season of 1997. Samples were collected from three tobacco fields in each of the three provinces, and a total of 72 samples was analysed. Virus identification was based on field disease syndrome, host range studies, DAS-ELISA and electron microscopy of virus particles in some cases. The study demonstrated the occurrence of Tobacco mosaic virus (TMV), Potato virus Y (PVY), Alfalfa mosaic virus (AMV) and Tobacco ringspot virus (TRSV). TMV and PVY occurred widely and were common in all three provinces, while AMV and TRSV were relatively less common. The prevalence of the four viruses was TMV 78%, PVY 67%, AMV 33% and TRSV 22%. Serological tests for Tomato spotted wilt virus (TSWV) and Cucumber mosaic virus (CMV) showed that these viruses were not present in the tobacco samples analysed.  相似文献   

14.
从葎草中检出复合侵染的多种病毒   总被引:2,自引:0,他引:2  
采用抗原直接包被酶联免疫吸附测定法(ELISA)对采自重庆近郊的34个葎草样品进行了主要病毒种类的检测。其中马铃薯Y病毒(Potato virus Y, PVY)的侵染最普遍,其阳性检出率达44.12%;马铃薯X病毒(Potato virus X, PVX)的阳性检出率最低,仅为26.47%,其余5种病毒,烟草花叶病毒(Tobacco mosaic virus, TMV)、黄瓜花叶病毒(Cucumber mosaic virus, CMV)、番茄花叶病毒(Tomato mosaic virus, ToMV)、芜菁花叶病毒(Turnip mosaic virus, TuMV)及蚕豆萎蔫病毒2号(Broad bean wilt virus 2, BBWV-2)的阳性检出率均为35.29%。葎草样品受多种病毒的复合侵染现象非常严重,15个阳性样品中病毒复合侵染率为80%,其中75%的样品检测到7种病毒复合侵染。  相似文献   

15.
Pepper production is affected by several viral diseases in Samsun, Turkey. To determine the identity of these viruses, a total of 313 samples from field-grown peppers were collected during surveys in 1998 and 1999, and tested by enzyme linked immunosorbent assay (ELISA). Six viruses,Alfalfa mosaic virus (AMV),Cucumber mosaic virus (CMV),Potato virus Y (PVY),Tomato mosaic virus (ToMV),Tobacco mosaic virus (TMV) andTomato spotted wilt virus (TSWV) were detected in the samples. Of 313 plants tested, 42 were doubly infected, and TMV+PVY (15.4%) was the most common double infection. This is also the first report of AMV in pepper fields in Turkey. The effect of some weed species that may act as reservoir of these viruses was also investigated in the region and of 24 weed species belonging to 15 families tested, 16 were found to be infected with at least one virus.Amaranthus retroflexus (Redroot pigweed) appeared to be a common host of CMV, PVY, ToMV, TMV and TSWV, whereasHibiscus trionum (Venice mallow) was recorded as a new weed host of PVY and TSWV. The majority of weed species found to be virus infected were very common in the pepper growing areas of the region. This indicates that pepper fields contaminated with these weeds are under risk of viral infections. http://www.phytoparasitica.org posting July 21, 2005.  相似文献   

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